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Design of a Static Current Simulator Using Device Matrix Approach

机译:基于设备矩阵法的静态电流仿真器设计

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I-V characteristic is one of the important results produced by a device simulator. In this article, a novel and interactive matrix based algorithm is presented to draw the device structure in 2-D or 3-D style and to plot the I-V characteristic of the device for user specified doping and biasing conditions. Algorithm creates 2-D or 3-D matrix of the device from device description mentioned by the user. This device matrix undergoes many different operations, and various mathematical computations are performed, using which I-V characteristic is plotted. This approach gives a novel idea of basic device level tool development. The students and device level engineers can find this work useful which offers them an interactive and instant way to draw I-V characteristics of the device. The algorithm implementation is modular and matrix based, which is done using MATLAB®.
机译:I-V特性是设备模拟器产生的重要结果之一。在本文中,提出了一种新颖的基于交互式矩阵的算法,以2D或3D样式绘制器件结构,并针对用户指定的掺杂和偏置条件绘制器件的I-V特性。算法根据用户提到的设备描述创建设备的2D或3D矩阵。该器件矩阵经历了许多不同的运算,并且执行了各种数学计算,利用这些数学计算得出了I-V特性。这种方法给出了基本设备级工具开发的新颖思路。学生和设备级工程师会发现这项工作很有用,这为他们提供了一种交互式,即时的方式来绘制设备的I-V特性。该算法的实现是基于模块和矩阵的,这是使用MATLAB®完成的。

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